丁香假单胞菌耐药性的体外生物测定。actinidiae

Fa-ming Wang, Jie-wei Li, K. Ye, Pingping Liu, H. Gong, Q. Jiang, Beibei Qi, Q. Mo
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引用次数: 10

摘要

丁香假单胞菌。猕猴桃酸菌(actinidiae, Psa)是迄今为止猕猴桃最重要的病原菌。猕猴桃产业的可持续发展需要使用耐psa或耐psa的基因型来培育耐psa的品种。然而,目前对猕猴桃品种和野生基因型的抗性了解甚少,猕猴桃属植物对Psa抗性的评价方法尚未建立。利用18种猕猴桃基因型,建立了一种独特的体外Psa抗性评价方法。该试验包括剥树皮和测量接种了细菌的甘蔗片的损伤,并结合观察愈伤组织形成、芽发芽和Psa侵入木质部的程度等症状。Psa相对耐药或耐受分为四类。划分结果与实地观察一致。这是第一个能够大规模筛选猕猴桃种质中psa抗性的体外实验,具有较高的准确性和重复性。该检测结果将极大地促进psa抗性品种的选育,并为其他植物对不同病原菌的抗性评价提供有价值的参考和启示。
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An in vitro Actinidia Bioassay to Evaluate the Resistance to Pseudomonas syringae pv. actinidiae
Pseudomonas syringae pv. actinidiae (Psa) is by far the most important pathogen of kiwifruit. Sustainable expansion of the kiwifruit industry requires the use of Psa-tolerant or resistant genotypes for the breeding of tolerant cultivars. However, the resistance of most existing kiwifruit cultivars and wild genotypes is poorly understood, and suitable evaluation methods of Psa resistance in Actinidia have not been established. A unique in vitro method to evaluate Psa resistance has been developed with 18 selected Actinidia genotypes. The assay involved debarking and measuring the lesions of cane pieces inoculated with the bacterium in combination with the observation of symptoms such as callus formation, sprouting of buds, and the extent to which Psa invaded xylem. Relative Psa resistance or tolerance was divided into four categories. The division results were consistent with field observations. This is the first report of an in vitro assay capable of large-scale screening of Psa-resistance in Actinidia germplasm with high accuracy and reproducibility. The assay would considerably facilitate the breeding of Psa-resistant cultivars and provide a valuable reference and inspiration for the resistance evaluation of other plants to different pathogens.
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